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锚杆+锚索+锚注协调支护的应用
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作者 杨德新 张伟 张新华 《中国高新技术企业》 2011年第18期48-50,共3页
九矿东总回风巷道处于高应力、强流变环境中,开掘之后处于流变状态,出现变形破坏加剧、底鼓严重等支护问题,同时严重影响矿井通风安全,已成为制约矿井安全生产的瓶颈问题,传统的普通支护方式已远远满足不了生产的需要。文章基于此探讨... 九矿东总回风巷道处于高应力、强流变环境中,开掘之后处于流变状态,出现变形破坏加剧、底鼓严重等支护问题,同时严重影响矿井通风安全,已成为制约矿井安全生产的瓶颈问题,传统的普通支护方式已远远满足不了生产的需要。文章基于此探讨了锚杆+锚索+锚注协调支护技术,取得了良好的效果。 展开更多
关键词 高强锚杆 强力锚索 支护 注浆 围岩失稳机理
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强冲击地压区域大型机电峒室防冲支护技术研究
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作者 郭林 郭旭亮 《内蒙古煤炭经济》 2016年第12期122-123,共2页
本次研究以杨村煤矿13采区延深轨道下山绞车房为试验现场,通过对F16逆冲断层构造破碎围岩段巷道变化破坏特点及其失稳机理的分析,并运用超声波测定仪进行围岩松动圈测试,提出解决强冲击区域高应力大断面硐室支护的技术途径,采用以主动... 本次研究以杨村煤矿13采区延深轨道下山绞车房为试验现场,通过对F16逆冲断层构造破碎围岩段巷道变化破坏特点及其失稳机理的分析,并运用超声波测定仪进行围岩松动圈测试,提出解决强冲击区域高应力大断面硐室支护的技术途径,采用以主动支护为主,强力支护为辅的联合支护方式,同时通过进行现场试验,优化设计方案及支护参数,为解决断层带大断面硐室的支护提供依据。 展开更多
关键词 断层破碎带 围岩失稳机理 松动圈 防冲区域 复合支护技术
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Ground response and failure mechanism of gob-side entry by roof cutting with hard main roof
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作者 ZHU Heng-zhong XU Lei WEN Zhi-jie 《Journal of Central South University》 SCIE EI CAS 2024年第7期2488-2512,共25页
This study is the result of long-term efforts of the authors’team to assess ground response of gob-side entry by roof cutting(GSERC)with hard main roof,aiming at scientific control for GSERC deformation.A comprehensi... This study is the result of long-term efforts of the authors’team to assess ground response of gob-side entry by roof cutting(GSERC)with hard main roof,aiming at scientific control for GSERC deformation.A comprehensive field measurement program was conducted to determine entry deformation,roof fracture zone,and anchor bolt(cable)loading.The results indicate that GSERC deformation presents asymmetric characteristics.The maximum convergence near roof cutting side is 458 mm during the primary use process and 1120 mm during the secondary reuse process.The entry deformation is closely associated with the primary development stage,primary use stage,and secondary reuse stage.The key block movement of roof cutting structure,a complex stress environment,and a mismatch in the supporting design scheme are the failure mechanism of GSERC.A controlling ideology for mining states,including regional and stage divisions,was proposed.Both dynamic and permanent support schemes have been implemented in the field.Engineering practice results indicate that the new support scheme can efficiently ensure long-term entry safety and could be a reliable approach for other engineering practices. 展开更多
关键词 gob-side entry by roof cutting ground response failure mechanism following mining states control hard main roof
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